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刺激对随机泄漏积分发放神经元模型输入参数的影响。

Effect of stimulation on the input parameters of stochastic leaky integrate-and-fire neuronal model.

作者信息

Lansky Petr, Sanda Pavel, He Jufang

机构信息

Institute of Physiology, Academy of Sciences of the Czech Republic, Prague, Czech Republic.

出版信息

J Physiol Paris. 2010 May-Sep;104(3-4):160-6. doi: 10.1016/j.jphysparis.2009.11.019. Epub 2009 Nov 26.

Abstract

The Ornstein-Uhlenbeck neuronal model is specified by two types of parameters. One type corresponds to the properties of the neuronal membrane, whereas the second type (local average rate of the membrane depolarization and its variability) corresponds to the input of the neuron. In this article, we estimate the parameters of the second type from an intracellular record during neuronal firing caused by stimulation (audio signal). We compare the obtained estimates with those from the spontaneous part of the record. As predicted from the model construction, the values of the input parameters are larger for the periods when neuron is stimulated than for the spontaneous ones. Finally, the firing regimen of the model is checked. It is confirmed that the neuron is in the suprathreshold regimen during the stimulation.

摘要

奥恩斯坦 - 乌伦贝克神经元模型由两种类型的参数指定。一种类型对应于神经元膜的特性,而第二种类型(膜去极化的局部平均速率及其变异性)对应于神经元的输入。在本文中,我们从由刺激(音频信号)引起的神经元放电期间的细胞内记录中估计第二种类型的参数。我们将获得的估计值与记录的自发部分的估计值进行比较。正如从模型构建中预测的那样,神经元受到刺激时的输入参数值比自发状态时的更大。最后,检查模型的放电状态。证实神经元在刺激期间处于阈上状态。

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